GE DS3800DSWB

¥999.00

The GE DS3800DSWB is a Digital Servo Waveform Buffer board for the GE Speedtronic Mark IV turbine control system. Unlike the DS3800DSWA series which provides real-time waveform analysis, the DS3800DSWB functions as a signal buffering and distribution board. It accepts servo command and feedback signals, provides impedance matching, buffers them for multiple destinations (control processor, diagnostic ports, external recorders), and ensures signal integrity over long cable runs without loading the source circuits.

Category:

Description

Technical Specifications

  • Product Type: Servo Waveform Buffer Board

  • Part Number: DS3800DSWB

  • Manufacturer: General Electric (GE)

  • System Compatibility: GE Speedtronic Mark IV Turbine Control Systems

  • Input Channels: 8 differential analog inputs (±10Vdc, ±250mA)

  • Output Channels: 8 buffered analog outputs (±10Vdc, low impedance)

  • Buffer Gain: Unity gain (1:1) or selectable gain (0.5x, 1x, 2x) via jumpers

  • Input Impedance: > 1MΩ (differential)

  • Output Impedance: < 10Ω

  • Bandwidth: DC to 50kHz

  • Protection: Over-voltage protection on inputs; short-circuit protection on outputs

  • Isolation: 1500Vrms opto-isolation between inputs and outputs

  • Temperature Range: 0°C to +60°C

  • MTBF: > 150,000 hours (MIL-HDBK-217F)


Key Features & Advantages

  • Signal Integrity Preservation: The GE DS3800DSWB provides high-input-impedance buffering, preventing signal degradation when connecting multiple monitoring devices to critical servo channels.

  • Multiple Output Distribution: Each input channel is distributed to multiple destinations (e.g., Mark IV processor, oscilloscope, data logger, DCS) without loading the source.

  • Selectable Gain: Jumper-selectable gain (0.5x, 1x, 2x) allows signal scaling for different monitoring devices with varying input ranges.

  • Low Output Impedance: Outputs can drive long cable runs (up to 500m) without signal attenuation or noise pickup.

  • Diagnostic LEDs: Front-panel LEDs indicate input presence and output activity per channel.

  • Passive Monitoring: The GE DS3800DSWB does not interfere with normal turbine operation; it is a passive buffer.


Typical Application Cases

  • Signal Distribution: The GE DS3800DSWB distributes servo command and feedback signals to multiple destinations (processor, DCS, diagnostic ports).

  • Long-Distance Transmission: Drives signals over long cable runs (e.g., from turbine cabinet to control room) without attenuation or noise.

  • Impedance Matching: Provides proper impedance matching when connecting Mark IV signals to external test equipment or recorders.

  • Isolation: Provides galvanic isolation between the sensitive Mark IV logic circuits and external monitoring devices.


Competitive Comparison

Feature GE DS3800DSWB GE DS3800DSWA (Waveform Analyzer) External Signal Conditioner
Primary Function Buffering/distribution Analysis/capture Buffering/conditioning
Channels 8 inputs / 8 outputs 8 inputs (no outputs) 1-4 channels
Gain Options Selectable (0.5x, 1x, 2x) Fixed (1x) Variable
Bandwidth DC to 50kHz DC to 10kHz DC to 100kHz
Isolation 1500Vrms 1500Vrms 500Vrms typical
Output Drive Low impedance (<10Ω) High impedance (>1kΩ) Low impedance
Compatibility Mark IV backplane Mark IV backplane Requires external power

The GE DS3800DSWB is essential for maintaining signal integrity when distributing servo signals to multiple destinations. Modern external signal conditioners offer similar functionality but require separate power supplies and wiring, whereas the GE DS3800DSWB integrates directly into the Mark IV rack.


Selection Guidelines & Precautions

  1. Gain Selection: Verify the input range of your monitoring device. Set gain on GE DS3800DSWB to 0.5x, 1x, or 2x to match the device’s full-scale range. Incorrect gain will cause clipping or under-range readings.

  2. Cable Length: The GE DS3800DSWB can drive cables up to 500m. For longer runs, consider using additional line drivers or reducing cable resistance.

  3. Input Loading: Verify the source signal can drive the GE DS3800DSWB input impedance (>1MΩ). Mark IV signals are designed for this; no additional loading is expected.

  4. Output Short-Circuit Protection: The GE DS3800DSWB outputs are short-circuit protected. However, repeated shorting may reduce output drive capability; avoid intentional shorting.

  5. Isolation: The GE DS3800DSWB provides isolation between inputs and outputs. However, if connecting to multiple external devices, ensure there are no ground loops between them.

  6. Shielded Cabling: Use shielded twisted-pair cables for all connections. Ground shield at the GE DS3800DSWB end only to prevent ground loops.

  7. ESD Handling: Use ESD-safe practices; contains sensitive analog front-end components.

  8. Sourcing: Obsolete. Request functional test report including:

    • All 8 channels tested for gain accuracy (0.5x, 1x, 2x)

    • Bandwidth verification (DC to 50kHz)

    • Output drive capability test (<10Ω impedance)

    • Isolation resistance test

    • Protection functionality validation

  9. Spare Strategy: Keep one spare GE DS3800DSWB on-site if multiple monitoring devices require signal access. For critical signal distribution, consider redundant buffering using two boards.

FOXBORO AD916AG
SCHNEIDER 140DAI74000
SCHNEIDER 140DAI74000
A-B 1734-AENTR

Reviews

There are no reviews yet.

Be the first to review “GE DS3800DSWB”

Your email address will not be published. Required fields are marked *

Post comment